Liu Guiqun, Zhang Xiaoli, Wang Xinyi, Qiao Yanxin
College of Material Science and Engineering, North Minzu University, Yinchuan 750021, China.
School of Materials Science and Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, China.
Scanning. 2020 Mar 6;2020:2569837. doi: 10.1155/2020/2569837. eCollection 2020.
The precipitation behaviors of the topologically close-packed (TCP) phases in the bicrystal DD5 superalloy have been investigated. The results showed that the [001] crystallographic orientations are consistent with that of adjacent grains; however, the direction of the needle-like TCP phases is not consistent with that of the phase channels. The angle between needle-like TCP phases and phase channels is 45°, but the angle between the needle-like TCP phases of the adjacent grains is equal to the misorientation of the adjacent grains. Furthermore, during long-term aging, the needle-like TCP phases gradually decompose and transform into globular and short rod-like phases. The TCP phases precipitate preferentially in the dendrite. It is difficult to precipitate at the interdendrite/grain boundary, which is caused by the segregation of the constituent elements of the TCP phase to the dendrite.
研究了双晶DD5高温合金中拓扑密排(TCP)相的析出行为。结果表明,[001]晶体取向与相邻晶粒一致;然而,针状TCP相的方向与γ相通道的方向不一致。针状TCP相与γ相通道之间的夹角为45°,但相邻晶粒的针状TCP相之间的夹角等于相邻晶粒的取向差。此外,在长期时效过程中,针状TCP相逐渐分解并转变为球状和短棒状相。TCP相优先在枝晶中析出。在枝晶间/晶界处难以析出,这是由于TCP相的组成元素偏聚到枝晶中所致。